›› 2019, Vol. 50 ›› Issue (3): 6-12.

• 基础研究 • 上一篇    下一篇

孔结构与酸性质对多孔材料催化性能的影响

郑金玉,罗一斌,舒兴田   

  1. 中国石化石油化工科学研究院
  • 收稿日期:2018-07-18 修回日期:2018-08-09 出版日期:2019-03-12 发布日期:2019-03-26
  • 通讯作者: 郑金玉 E-mail:zhengjy.ripp@sinopec.com

EFFECT OF PORE STRUCTURE AND ACIDIC PROPERTY ON CATALYTIC PROPERTIES OF POROUS SILICA-ALUMINA MATERIALS

Zheng Jinyu,Luo Yibin,Shu Xingtian   

  • Received:2018-07-18 Revised:2018-08-09 Online:2019-03-12 Published:2019-03-26
  • Contact: Zheng Jinyu E-mail:zhengjy.ripp@sinopec.com

摘要: 采用成胶、陈化、后处理等过程制备出具有不同孔道结构和不同酸性质的多孔硅铝材料,用XRD,BET,FT-IR,NH3-TPD等方法对这些多孔材料进行结构和性能表征,并采用重油微反评价装置对这些材料制成的催化剂进行裂化性能考察。结果表明,通过合成条件的微调可以获得平均孔径为7~14 nm,总酸量介于0.617~1.046 mmol/g,且同时含有B酸中心和L酸中心的多孔硅铝材料。孔径大小、酸性质及水热稳定性直接影响材料的转化能力及产品分布,其中孔径大小和酸性质的影响不尽相同,当平均孔径(水热老化后)介于11~14 nm时,二者的作用是相辅相成的,共同促进裂化活性的提升;当平均孔径进一步增大,孔径大小对裂化性能的影响程度超过酸性质的影响;在酸性质中,总酸量主要影响材料的裂化活性,而酸中心分布则更多地影响产物分布。

关键词: 硅铝材料, 孔结构, 酸量, 酸中心分布, 催化裂化

Abstract: A series of porous silica-alumina materials with different pore structure and acidity was prepared through co-gel,aging and post-treatment process,the structural properties was characterized by XRD,BET,FT-IR,NH3-TPD,and the cracking activities of the catalysts preparated by these materials were evaluated with the heavy oil micro-reactor. The results revealed that the materials with pore diameters of 7-14 nm,total acid contents of 0.617-1.046 mmol/g,and with both Br?nsted acid and Lewis acid are obtained by the adjustment of preparation conditions. Pore structure and acidic property as well as hydrothermal stability play important roles on cracking activity and product distribution,but pore size and acidity have different effects. When the pore size is between 11-14 nm after hydrothermal ageing treatment,the functions of pore structure and acidic property are complementary and promote the activity of cracking. As the pore sizes become larger,the effect of pore structure on cracking is much stronger than that of acidity. For acidity,the cracking activity is affected dramatically by the total acid content,but the product distribution mainly depends on the distribution of acid centers.

Key words: silica-alumina material, pore structure, acid content, acid center distribution, FCC